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Multiple-airgap iron-cored direct-driven permanent magnet wind generators

机译:多气隙铁芯直驱永磁风力发电机

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Multiple-air-gap permanent magnet (PM) generators with iron cores are analysed for application in wind turbines. Electromagnetic analysis of a double-stator, radial-flux, low-speed PM generator with concentrated windings using time-stepping finite element analysis is presented. Two design variants - with magnetic and non-magnetic rotor yokes - are considered. Magnetic flux density, output electrical characteristics and electromagnetic torque are compared for the two variants. Generator structure (one vs. two level machines), winding topology (single vs. double layer windings) are discussed for the machine with magnetic rotor yoke. Finally, optimal number of air gaps is proposed based on predictions of generator's power density and cost.
机译:分析了具有铁芯的多气隙永磁(PM)发电机在风力涡轮机中的应用。利用时步有限元分析方法,对具有集中绕组的双定子径向磁通低速永磁发电机进行了电磁分析。考虑了两种设计方案-带有磁转子轭和非磁转子轭。比较了两个变体的磁通密度,输出电特性和电磁转矩。讨论了具有磁转子磁轭的电机的发电机结构(一台与两台电机),绕组拓扑(单层与双层绕组)。最后,根据发电机的功率密度和成本的预测,提出了最佳的气隙数量。

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